Panyi G, Sheng Z, Deutsch C
Department of Physiology, University of Pennsylvania, Philadelphia 19104-6085, USA.
Biophys J. 1995 Sep;69(3):896-903. doi: 10.1016/S0006-3495(95)79963-5.
The lymphocyte voltage-gated K+ channel, Kv1.3, inactivates by a C-type process. We have elucidated the molecular basis for this process using a kinetic analysis of wild-type and mutant (A413V) Kv1.3 homo- and heteromultimeric currents in a mammalian lymphoid expression system. The medians of the measured inactivation time constants for wild-type and A413V homotetrameric currents are 204 and 4 ms, respectively. Co-expression of these subunits produces heteromultimeric channels manifesting inactivation kinetics intermediate between those of wild-type and A413V homomultimers. We have considered several models in which each subunit acts either independently or cooperatively to produce the observed inactivation kinetics. The cooperative model gives excellent fits to the data for any heteromultimeric composition of subunits, clearly distinguishing it from the independent models. In the cooperative model, the difference in free energy between the open and inactivated states of the channel is invariant with subunit composition and equals approximately 1.5 kcal/mol. Each subunit contributes equally to the activation free energy for transitions between open and inactivated states, with an A413V subunit decreasing the free energy barrier for inactivation (and for recovery from inactivation) by approximately 0.6 kcal/mol. Our results are consistent with a physical model in which the outer mouth of the channel constricts during C-type inactivation (G. Yellen, D. Sodickson, T. Chen, and M.E. Jurman, 1994, Biophys. J. 66:1068-1075).
淋巴细胞电压门控钾通道Kv1.3通过C型过程失活。我们在哺乳动物淋巴样表达系统中,对野生型和突变型(A413V)Kv1.3同源和异源多聚体电流进行动力学分析,从而阐明了这一过程的分子基础。野生型和A413V同源四聚体电流的测量失活时间常数的中位数分别为204毫秒和4毫秒。这些亚基的共表达产生了异源多聚体通道,其失活动力学介于野生型和A413V同源多聚体之间。我们考虑了几种模型,其中每个亚基独立或协同作用以产生观察到的失活动力学。对于任何亚基的异源多聚体组成,协同模型都能很好地拟合数据,这使其明显区别于独立模型。在协同模型中,通道开放和失活状态之间的自由能差异不随亚基组成而变化,约等于1.5千卡/摩尔。每个亚基对开放和失活状态之间转变的活化自由能贡献相等,一个A413V亚基使失活(以及从失活中恢复)的自由能垒降低约0.6千卡/摩尔。我们的结果与一个物理模型一致,即在C型失活过程中通道外口收缩(G. Yellen、D. Sodickson、T. Chen和M.E. Jurman,1994年,《生物物理学杂志》66:1068 - 1075)。